We present an operational procedure to transform global symmetries into local symmetries at the level of individual quantum states, as opposed to typical gauging prescriptions for Hamiltonians or Lagrangians. We then construct a compatible gauging map for operators, which preserves locality and reproduces the minimal coupling scheme for simple operators. By combining this construction with the formalism of projected entangled-pair states (PEPS), we can show that an injective PEPS for the matter fields is gauged into a G-injective PEPS for the combined gauge-matter system, which potentially has topological order. We derive the corresponding parent Hamiltonian, which is a frustration-free gauge-theory Hamiltonian closely related to the Kogut-...
Local gauge symmetries reduce to the identity on the observables, as well as on the physical states ...
The topological features of quantum many-body wavefunctions are known to have profound consequences ...
In some many-body systems, certain ground-state entanglement (Rényi) entropies increase even as the ...
We present an operational procedure to transform global symmetries into local symmetries at the leve...
We present an operational procedure to transform global symmetries into local symmetries at the leve...
Projected entangled pair states (PEPS) provide a natural ansatz for the ground states of gapped, loc...
Over the last years, Projected Entangled Pair States have demonstrated great power for the study of ...
We introduce a framework for characterizing Matrix Product States (MPS) and Projected Entangled Pair...
We introduce a framework for characterizing Matrix Product States (MPS) and Projected Entangled Pair...
The low-temperature physics of quantum many-body systems is largely governed by the structure of the...
Gauging is a general procedure for mapping a quantum many-body system with a global symmetry to one ...
In this thesis, we consider projected entangled pair state (PEPS) models as a framework for two-dime...
Recent years have witnessed an enormously growing understanding of quan-tum many-body systems, based...
We consider one-dimensional Hamiltonian systems whose ground states display symmetry-protected topol...
We investigate the action of local unitary operations on multimode (pure or mixed) Gaussian states a...
Local gauge symmetries reduce to the identity on the observables, as well as on the physical states ...
The topological features of quantum many-body wavefunctions are known to have profound consequences ...
In some many-body systems, certain ground-state entanglement (Rényi) entropies increase even as the ...
We present an operational procedure to transform global symmetries into local symmetries at the leve...
We present an operational procedure to transform global symmetries into local symmetries at the leve...
Projected entangled pair states (PEPS) provide a natural ansatz for the ground states of gapped, loc...
Over the last years, Projected Entangled Pair States have demonstrated great power for the study of ...
We introduce a framework for characterizing Matrix Product States (MPS) and Projected Entangled Pair...
We introduce a framework for characterizing Matrix Product States (MPS) and Projected Entangled Pair...
The low-temperature physics of quantum many-body systems is largely governed by the structure of the...
Gauging is a general procedure for mapping a quantum many-body system with a global symmetry to one ...
In this thesis, we consider projected entangled pair state (PEPS) models as a framework for two-dime...
Recent years have witnessed an enormously growing understanding of quan-tum many-body systems, based...
We consider one-dimensional Hamiltonian systems whose ground states display symmetry-protected topol...
We investigate the action of local unitary operations on multimode (pure or mixed) Gaussian states a...
Local gauge symmetries reduce to the identity on the observables, as well as on the physical states ...
The topological features of quantum many-body wavefunctions are known to have profound consequences ...
In some many-body systems, certain ground-state entanglement (Rényi) entropies increase even as the ...